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首页> 外文期刊>Progress in Artificial Intelligence >Super-resolution fluorescence-assisted diffraction computational tomography reveals the three-dimensional landscape of the cellular organelle interactome
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Super-resolution fluorescence-assisted diffraction computational tomography reveals the three-dimensional landscape of the cellular organelle interactome

机译:超分辨率荧光辅助衍射计算断层扫描揭示了细胞细胞器互乱组的三维景观

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The emergence of super-resolution (SR) fluorescence microscopy has rejuvenated the search for new cellular substructures. However, SR fluorescence microscopy achieves high contrast at the expense of a holistic view of the interacting partners and surrounding environment. Thus, we developed SR fluorescence-assisted diffraction computational tomography (SR-FACT), which combines label-free three-dimensional optical diffraction tomography (ODT) with two-dimensional fluorescence Hessian structured illumination microscopy. The ODT module is capable of resolving the mitochondria, lipid droplets, the nuclear membrane, chromosomes, the tubular endoplasmic reticulum, and lysosomes. Using dual-mode correlated live-cell imaging for a prolonged period of time, we observed novel subcellular structures named dark-vacuole bodies, the majority of which originate from densely populated perinuclear regions, and intensively interact with organelles such as the mitochondria and the nuclear membrane before ultimately collapsing into the plasma membrane. This work demonstrates the unique capabilities of SR-FACT, which suggests its wide applicability in cell biology in general.
机译:超分辨率(SR)荧光显微镜的出现已经恢复活力,寻找新的蜂窝子结构。然而,SR荧光显微镜以牺牲互动伴侣和周围环境的整体视图为代价达到高对比度。因此,我们开发了SR荧光辅助衍射计算断层扫描(SR-FACT),其将无标记的三维光学衍射断层扫描(ODT)与二维荧光Hessian结构化照明显微镜相结合。 ODT模块能够解决线粒体,脂液滴,核膜,染色体,管状内质网和溶酶体。使用双模相关的活细胞成像进行长时间,我们观察到新的亚细胞结构命名为深色液体体,其中大多数源自密集的蠕变区,并与细胞器等细胞器相互作用,诸如线粒体和核的细胞器相互作用膜最终坍塌进入质膜。这项工作展示了SR-FACT的独特能力,这表明其在细胞生物学中的广泛适用性。

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